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Stressing the passive behavior of a Passivhaus: An evidence-based scenario analysis for a Mediterranean case study

机译:强调Passivhaus的被动行为:地中海案例研究的循证情景分析

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This paper first reports the outcomes of a one-year measurement campaign of a passive house built in the Mediterranean climate of Cesena (Italy) in terms of thermal comfort parameters temperature and relative humidity and Indoor Environmental Quality (IEQ) parameter CO2concentrations. The design carried out with the help of the steady state Passive House Planning Package (PHPP) was able to guarantee good comfort conditions during the heating period, but on the other hand, overheating occurrences during the cooling season have been recorded for almost 50% time according to EN 15251 Standard. Further analyses conducted with the help of dynamic simulations in EnergyPlus allowed identifying the insulation levels and ventilation mode as the key design factors to change in order to reduce overheating to less than 20% of time while keeping a comfortable indoor environment in winter.The simplifications that can be made by reducing the insulation material thickness (up to a third of the original value) on the roof and on the walls, replacing triple-glazed windows with double-glazed windows and implementing a hybrid ventilation strategy instead of using Mechanical Ventilation with Heat Recovery (MVHR) alone could also lead to economic savings. These savings, due to both lower construction costs and operational energy savings, amount to 8755 euros in terms of Net Present Value (NPV) over 30 years' time.The Passivhaus Standard can still be regarded as a good reference for designing low-energy and comfortable houses in a Mediterranean climate if some simplifications are made according to detailed building performance simulations.
机译:本文首先报告了在意大利切塞纳(Cesena)地中海气候中建造的被动式房屋进行为期一年的测量活动的结果,该测量结果涉及热舒适性参数温度和相对湿度以及室内环境质量(IEQ)参数CO2浓度。在稳态被动房计划软件包(PHPP)的帮助下进行的设计能够保证供暖期间良好的舒适条件,但是另一方面,在制冷季节发生的过热事件已记录了将近50%的时间。根据EN 15251标准。在EnergyPlus中通过动态模拟进行的进一步分析允许将隔热等级和通风模式确定为要更改的主要设计因素,以将过热降低到20%以下的时间,同时在冬季保持舒适的室内环境。可以通过减少屋顶和墙壁上的隔热材料厚度(至多为原始值的三分之一),用双层玻璃窗代替三层玻璃窗并实施混合通风策略(而不是通过热量进行机械通风)来制造仅恢复(MVHR)也可以节省经济。由于降低了建设成本并节省了运营能源,这些节省的成本在30年内达到了8755欧元的净现值(NPV).Passivhaus Standard仍可被视为设计低能耗和节能的良好参考。如果根据详细的建筑性能模拟进行了一些简化,则可在地中海气候中找到舒适的房屋。

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